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Performance Analysis of Micro Gas Turbine Fueled Biomass Gas

机译:微燃气轮机燃料生物质气体的性能分析

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Micro gas turbine-based distributed energy supply system fueled with biomass gas has got the wide attention due to its broad application prospects.When applied to a conventional micro gas turbine,the different composition and calorific value of biomass gas will have a huge impact on the performance of the conventional micro gas turbine.In this paper,the detailed thermodynamic calculation of a 30KW micro gas turbine fueled with various biomass gas is conducted.With the consideration of the match between the flow rate of fuel and the compressed air and the flow rate match between the main components of the conventional micro gas turbine,the performance of the micro gas turbine fueled with each kind of biomass gas is analyzed.Under the given turbine inlet temperature condition,the impact of the cycle pressure ratio on the efficiency of the reheated Brayton cycle is studied,then the optimal design parameters of the micro gas turbine for different biomass gas are discussed.The results have certain directive meaning toward the design and development of micro gas turbine fueled with biomass gas.
机译:基于微型燃气轮机的分布式能量供应系统,由于其广泛的应用前景,由于其广泛的应用前景而导致了广泛的关注。当适用于传统的微燃气轮机时,生物质气体的不同组成和热值将对此产生巨大影响传统微燃气轮机的性能。本文进行了用各种生物质气体推动的30kW微燃气涡轮机的详细热力学计算。在燃料流速与压缩空气和流速之间的匹配中考虑匹配在传统的微燃气轮机的主要部件之间匹配,分析了通过各种生物质气体燃料的微型燃气轮机的性能。在给定的涡轮机入口温度条件下,循环压力比对重新加热效率的影响研究了Brayton循环,然后讨论了用于不同生物质气体的微燃气轮机的最佳设计参数。结果有促进了生物质气体的微型燃气轮机的设计和开发的某些指示意义。

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